雌二醇17β对雌性莫桑比克罗非鱼脑段离子转运体功能的快速原位作用

Dafina Wilfred, V. S. Peter, Subash Peter
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引用次数: 0

摘要

雌二醇17β (e2)是主要的雌激素,对包括鱼类在内的脊椎动物的正常卵巢功能至关重要。除了在生殖中发挥主要作用外,e2还在许多其他生理过程中发挥作用,包括水和矿物质平衡。然而,e2如何调节驱动Na +、K +、H +、ca2 +和mg2 +在鱼脑中的转运的离子特异性atp酶尚不清楚。因此,我们研究了e2对淡水雌性莫桑比克罗非鱼脑段离子转运蛋白功能的短期原位作用。采用增加剂量的e2(10 -9、10 -8和10 -7 M)灌注罗非鱼20 min,取样测定脑前脑(PC)、中脑(MC)和后脑(MeC)段Na + /K + - atp酶、H + - atp酶、ca2 + - atp酶和Mg 2+ - atp酶活性。内皮细胞e2灌注后Na + /K +和ca2 +转运蛋白活性呈剂量依赖性增加。在MC中,e2处理显著提高了线粒体中Mg 2+、Ca 2+和H +的转运活性,但降低了Na + /K + -和νH +转运体的活性。相反,在MeC中,e2处理在增加Na + /K + -、线粒体-和νH + -转运的同时,降低了细胞质和线粒体ca2 +转运。综上所述,这些数据表明e2对离子转运体功能具有快速和直接的作用,对应于雌性淡水罗非鱼脑段神经元簇的差异激活/失活。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Rapid In Situ Action of Estradiol 17β on Ion Transporter Function in Brain Segments of Female Mozambique Tilapia ( Oreochromis mossambicus Peters)
Being the principal estrogen, estradiol 17β (E 2 ) is essential for normal ovarian function in the vertebrates including fishes. Besides its primary role in reproduction, E 2 is also known for its role in many other physiological processes including water and mineral balance. However, it is uncertain, how E 2  regulates ion-specific ATPases that drive Na + , K + , H + , Ca 2+ and Mg 2+ transport in fish brain. We, therefore, examined the short-term in situ action of E 2 on ion transporter function in the brain segments of freshwater female Mozambique tilapia Oreochromis mossambicus . Tilapia were perfused with increasing doses of E 2 (10 -9 , 10 -8 and 10 -7 M) for 20 min and sampled for determining Na + /K + -ATPase, H + -ATPase, Ca 2+ -ATPase, and Mg 2+ -ATPase activities in the prosencephalon (PC), mesencephalon (MC) and metencephalon (MeC) segments of brain. Dose-dependent increase in Na + /K + - and Ca 2+ -dependent transporter activities after E 2 perfusion were found in PC. In MC, E 2 treatment, however, produced significant increase in Mg 2+ , Ca 2+ and H + transport activities in mitochondria but decreased Na + /K + - and νH + transporter activities. On the contrary, in MeC, E 2 administration while producing increase in Na + /K + -, mitochondrial- and νH + -transport, lowered cytosolic and mitochondrial Ca 2+ transport. Taken together, the data indicate that E 2 has rapid and direct action on ion transporter function that corresponds to the differential activation/inactivation of neuronal clusters in the brain segments of female freshwater tilapia.
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